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巩固突变 ATP2B2 在神经发育和小脑病理中的作用。

Consolidating the Role of Mutated ATP2B2 in Neurodevelopmental and Cerebellar Pathologies.

机构信息

School of Medicine and Health, Institute of Human Genetics, Technical University of Munich, Munich, Germany.

Rady Children's Institute for Genomic Medicine, San Diego, California, USA.

出版信息

Clin Genet. 2025 Jan;107(1):91-97. doi: 10.1111/cge.14622. Epub 2024 Oct 5.

Abstract

Plasma membrane calcium ATPases (PMCAs) encoded by ATP2B genes have been implicated in Mendelian diseases with ataxia, dystonia, and intellectual disability. Work to date has shown that ATP2B2 (encoding PMCA2) is required for synaptic function and Purkinje-cell integrity in the cerebellum. A recent case series has linked ATP2B2 to a novel entity, characterized by neurodevelopmental and movement phenotypes, in only seven individuals. We called for collaboration to collect five unpublished families affected by the new rare ATP2B2-related condition. Exome-/genome sequencing-identified genotypes included four likely pathogenic/pathogenic heterozygous de novo missense variants and one dominantly inherited end-truncating frameshift allele. The six affected individuals shared features with the described patients including developmental delay, cognitive disturbances, epilepsy, autistic traits, and motor disorders. Striking cerebellar atrophy was observed in one affected individual. In association with hearing loss and movement abnormalities, we report a recurrent p.(Glu457Lys) substitution, previously documented in a neurologically impaired ATP2B2 mouse mutant. Our study further delineates the mutational spectrum and presentation of a human syndrome caused by ATP2B2 variants, confirming the importance of PMCA2 in neurotypical and cerebellar development.

摘要

血浆膜钙 ATP 酶(PMCAs)由 ATP2B 基因编码,与共济失调、肌张力障碍和智力障碍的孟德尔疾病有关。迄今为止的研究表明,ATP2B2(编码 PMCA2)是小脑突触功能和浦肯野细胞完整性所必需的。最近的一系列病例将 ATP2B2 与一种新的实体联系起来,这种实体仅在 7 个人中表现为神经发育和运动表型。我们呼吁合作,收集五个未发表的受新的罕见 ATP2B2 相关疾病影响的家族。外显子组/基因组测序确定的基因型包括四个可能的致病性/致病性新生错义杂合变异体和一个显性遗传的末端移码框移码等位基因。六个受影响的个体具有与描述的患者相同的特征,包括发育迟缓、认知障碍、癫痫、自闭症特征和运动障碍。在一个受影响的个体中观察到明显的小脑萎缩。我们报告了一个反复出现的 p.(Glu457Lys)取代,与听力损失和运动异常有关,该取代先前在神经损伤的 ATP2B2 小鼠突变体中被记录。我们的研究进一步描述了由 ATP2B2 变异引起的人类综合征的突变谱和表现,证实了 PMCA2 在神经典型和小脑发育中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55b4/11608835/a4dbe6e90f24/CGE-107-91-g002.jpg

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